350 lines
12 KiB
C++
350 lines
12 KiB
C++
// Copyright 2014 Google Inc. All rights reserved.
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//
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file or at
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// https://developers.google.com/open-source/licenses/bsd
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#include "packager/mpd/base/mpd_utils.h"
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#include <libxml/tree.h>
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#include "packager/base/logging.h"
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#include "packager/base/strings/string_number_conversions.h"
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#include "packager/mpd/base/xml/scoped_xml_ptr.h"
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namespace edash_packager {
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namespace {
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std::string TextCodecString(
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const edash_packager::MediaInfo& media_info) {
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CHECK(media_info.has_text_info());
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const std::string& format = media_info.text_info().format();
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// DASH IOP mentions that the codec for ttml in mp4 is stpp.
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if (format == "ttml" &&
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(media_info.container_type() == MediaInfo::CONTAINER_MP4)) {
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return "stpp";
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}
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// Otherwise codec doesn't need to be specified, e.g. vtt and ttml+xml are
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// obvious from the mime type.
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return "";
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}
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} // namespace
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bool HasVODOnlyFields(const MediaInfo& media_info) {
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return media_info.has_init_range() || media_info.has_index_range() ||
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media_info.has_media_file_name() ||
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media_info.has_media_duration_seconds();
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}
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bool HasLiveOnlyFields(const MediaInfo& media_info) {
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return media_info.has_init_segment_name() ||
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media_info.has_segment_template() ||
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media_info.has_segment_duration_seconds();
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}
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void RemoveDuplicateAttributes(
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ContentProtectionElement* content_protection_element) {
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DCHECK(content_protection_element);
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typedef std::map<std::string, std::string> AttributesMap;
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AttributesMap& attributes = content_protection_element->additional_attributes;
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if (!content_protection_element->value.empty())
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attributes.erase("value");
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if (!content_protection_element->scheme_id_uri.empty())
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attributes.erase("schemeIdUri");
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}
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std::string GetLanguage(const MediaInfo& media_info) {
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std::string lang;
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if (media_info.has_audio_info()) {
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lang = media_info.audio_info().language();
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} else if (media_info.has_text_info()) {
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lang = media_info.text_info().language();
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}
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return lang;
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}
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std::string GetCodecs(const MediaInfo& media_info) {
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CHECK(OnlyOneTrue(media_info.has_video_info(), media_info.has_audio_info(),
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media_info.has_text_info()));
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if (media_info.has_video_info()) {
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if (media_info.container_type() == MediaInfo::CONTAINER_WEBM) {
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std::string codec = media_info.video_info().codec().substr(0, 4);
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// media_info.video_info().codec() contains new revised codec string
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// specified by "VPx in ISO BMFF" document, which is not compatible to
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// old codec strings in WebM. Hack it here before all browsers support
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// new codec strings.
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if (codec == "vp08")
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return "vp8";
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if (codec == "vp09")
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return "vp9";
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}
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return media_info.video_info().codec();
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}
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if (media_info.has_audio_info())
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return media_info.audio_info().codec();
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if (media_info.has_text_info())
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return TextCodecString(media_info);
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NOTREACHED();
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return "";
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}
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std::string GetBaseCodec(const MediaInfo& media_info) {
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std::string codec;
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if (media_info.has_video_info()) {
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codec = media_info.video_info().codec();
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} else if (media_info.has_audio_info()) {
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codec = media_info.audio_info().codec();
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} else if (media_info.has_text_info()) {
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codec = media_info.text_info().format();
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}
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// Convert, for example, "mp4a.40.2" to simply "mp4a".
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// "mp4a.40.2" and "mp4a.40.5" can exist in the same AdaptationSet.
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size_t dot = codec.find('.');
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if (dot != std::string::npos) {
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codec.erase(dot);
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}
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return codec;
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}
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std::string GetAdaptationSetKey(const MediaInfo& media_info) {
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std::string key;
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if (media_info.has_video_info()) {
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key.append("video:");
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} else if (media_info.has_audio_info()) {
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key.append("audio:");
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} else if (media_info.has_text_info()) {
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key.append(MediaInfo_TextInfo_TextType_Name(media_info.text_info().type()));
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key.append(":");
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} else {
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key.append("unknown:");
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}
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key.append(MediaInfo_ContainerType_Name(media_info.container_type()));
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key.append(":");
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key.append(GetBaseCodec(media_info));
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key.append(":");
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key.append(GetLanguage(media_info));
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return key;
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}
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std::string SecondsToXmlDuration(double seconds) {
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return "PT" + base::DoubleToString(seconds) + "S";
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}
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bool GetDurationAttribute(xmlNodePtr node, float* duration) {
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DCHECK(node);
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DCHECK(duration);
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static const char kDuration[] = "duration";
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xml::scoped_xml_ptr<xmlChar> duration_value(
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xmlGetProp(node, BAD_CAST kDuration));
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if (!duration_value)
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return false;
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double duration_double_precision = 0.0;
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if (!base::StringToDouble(reinterpret_cast<const char*>(duration_value.get()),
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&duration_double_precision)) {
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return false;
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}
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*duration = static_cast<float>(duration_double_precision);
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return true;
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}
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bool MoreThanOneTrue(bool b1, bool b2, bool b3) {
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return (b1 && b2) || (b2 && b3) || (b3 && b1);
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}
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bool AtLeastOneTrue(bool b1, bool b2, bool b3) { return b1 || b2 || b3; }
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bool OnlyOneTrue(bool b1, bool b2, bool b3) {
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return !MoreThanOneTrue(b1, b2, b3) && AtLeastOneTrue(b1, b2, b3);
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}
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// Coverts binary data into human readable UUID format.
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bool HexToUUID(const std::string& data, std::string* uuid_format) {
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DCHECK(uuid_format);
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const size_t kExpectedUUIDSize = 16;
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if (data.size() != kExpectedUUIDSize) {
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LOG(ERROR) << "UUID size is expected to be " << kExpectedUUIDSize
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<< " but is " << data.size() << " and the data in hex is "
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<< base::HexEncode(data.data(), data.size());
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return false;
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}
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const std::string hex_encoded =
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base::StringToLowerASCII(base::HexEncode(data.data(), data.size()));
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DCHECK_EQ(hex_encoded.size(), kExpectedUUIDSize * 2);
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base::StringPiece all(hex_encoded);
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// Note UUID has 5 parts separated with dashes.
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// e.g. 123e4567-e89b-12d3-a456-426655440000
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// These StringPieces have each part.
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base::StringPiece first = all.substr(0, 8);
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base::StringPiece second = all.substr(8, 4);
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base::StringPiece third = all.substr(12, 4);
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base::StringPiece fourth = all.substr(16, 4);
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base::StringPiece fifth = all.substr(20, 12);
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// 32 hexadecimal characters with 4 hyphens.
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const size_t kHumanReadableUUIDSize = 36;
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uuid_format->reserve(kHumanReadableUUIDSize);
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first.CopyToString(uuid_format);
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uuid_format->append("-");
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second.AppendToString(uuid_format);
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uuid_format->append("-");
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third.AppendToString(uuid_format);
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uuid_format->append("-");
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fourth.AppendToString(uuid_format);
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uuid_format->append("-");
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fifth.AppendToString(uuid_format);
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return true;
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}
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void UpdateContentProtectionPsshHelper(
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const std::string& drm_uuid,
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const std::string& pssh,
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std::list<ContentProtectionElement>* content_protection_elements) {
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const std::string drm_uuid_schemd_id_uri_form = "urn:uuid:" + drm_uuid;
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for (std::list<ContentProtectionElement>::iterator protection =
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content_protection_elements->begin();
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protection != content_protection_elements->end(); ++protection) {
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if (protection->scheme_id_uri != drm_uuid_schemd_id_uri_form) {
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continue;
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}
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for (std::vector<Element>::iterator subelement =
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protection->subelements.begin();
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subelement != protection->subelements.end(); ++subelement) {
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if (subelement->name == kPsshElementName) {
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// For now, we want to remove the PSSH element because some players do
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// not support updating pssh.
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protection->subelements.erase(subelement);
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// TODO(rkuroiwa): Uncomment this and remove the line above when
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// shaka-player supports updating PSSH.
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// subelement->content = pssh;
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return;
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}
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}
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// Reaching here means <cenc:pssh> does not exist under the
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// ContentProtection element. Add it.
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// TODO(rkuroiwa): Uncomment this when shaka-player supports updating PSSH.
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// Element cenc_pssh;
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// cenc_pssh.name = kPsshElementName;
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// cenc_pssh.content = pssh;
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// protection->subelements.push_back(cenc_pssh);
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return;
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}
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// Reaching here means that ContentProtection for the DRM does not exist.
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// Add it.
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ContentProtectionElement content_protection;
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content_protection.scheme_id_uri = drm_uuid_schemd_id_uri_form;
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// TODO(rkuroiwa): Uncomment this when shaka-player supports updating PSSH.
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// Element cenc_pssh;
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// cenc_pssh.name = kPsshElementName;
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// cenc_pssh.content = pssh;
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// content_protection.subelements.push_back(cenc_pssh);
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content_protection_elements->push_back(content_protection);
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return;
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}
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namespace {
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// Helper function. This works because Representation and AdaptationSet both
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// have AddContentProtectionElement().
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template <typename ContentProtectionParent>
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void AddContentProtectionElementsHelperTemplated(
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const MediaInfo& media_info,
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ContentProtectionParent* parent) {
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DCHECK(parent);
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if (!media_info.has_protected_content())
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return;
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const MediaInfo::ProtectedContent& protected_content =
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media_info.protected_content();
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// DASH MPD spec specifies a default ContentProtection element for ISO BMFF
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// (MP4) files.
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const bool is_mp4_container =
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media_info.container_type() == MediaInfo::CONTAINER_MP4;
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std::string key_id_uuid_format;
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if (protected_content.has_default_key_id()) {
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if (!HexToUUID(protected_content.default_key_id(), &key_id_uuid_format)) {
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LOG(ERROR) << "Failed to convert default key ID into UUID format.";
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}
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}
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if (is_mp4_container) {
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ContentProtectionElement mp4_content_protection;
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mp4_content_protection.scheme_id_uri = kEncryptedMp4Scheme;
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mp4_content_protection.value = protected_content.protection_scheme();
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if (!key_id_uuid_format.empty()) {
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mp4_content_protection.additional_attributes["cenc:default_KID"] =
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key_id_uuid_format;
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}
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parent->AddContentProtectionElement(mp4_content_protection);
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}
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for (int i = 0; i < protected_content.content_protection_entry().size();
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++i) {
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const MediaInfo::ProtectedContent::ContentProtectionEntry& entry =
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protected_content.content_protection_entry(i);
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if (!entry.has_uuid()) {
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LOG(WARNING)
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<< "ContentProtectionEntry was specified but no UUID is set for "
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<< entry.name_version() << ", skipping.";
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continue;
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}
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ContentProtectionElement drm_content_protection;
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drm_content_protection.scheme_id_uri = "urn:uuid:" + entry.uuid();
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if (entry.has_name_version())
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drm_content_protection.value = entry.name_version();
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if (entry.has_pssh()) {
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std::string base64_encoded_pssh;
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base::Base64Encode(entry.pssh(), &base64_encoded_pssh);
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Element cenc_pssh;
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cenc_pssh.name = kPsshElementName;
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cenc_pssh.content = base64_encoded_pssh;
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drm_content_protection.subelements.push_back(cenc_pssh);
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}
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if (!key_id_uuid_format.empty() && !is_mp4_container) {
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drm_content_protection.additional_attributes["cenc:default_KID"] =
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key_id_uuid_format;
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}
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parent->AddContentProtectionElement(drm_content_protection);
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}
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LOG_IF(WARNING, protected_content.content_protection_entry().size() == 0)
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<< "The media is encrypted but no content protection specified.";
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}
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} // namespace
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void AddContentProtectionElements(const MediaInfo& media_info,
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Representation* parent) {
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AddContentProtectionElementsHelperTemplated(media_info, parent);
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}
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void AddContentProtectionElements(const MediaInfo& media_info,
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AdaptationSet* parent) {
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AddContentProtectionElementsHelperTemplated(media_info, parent);
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}
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} // namespace edash_packager
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